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Multi-level chirality in liquid crystals formed by achiral molecules

机译:非手性分子形成的液晶中的多级手性

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摘要

Complex materials often exhibit a hierarchical structure with an intriguing mechanism responsible for the ‘propagation’ of order from the molecular to the nano- or micro-scale level. In particular, the chirality of biological molecules such as nucleic acids and amino acids is responsible for the helical structure of DNA and proteins, which in turn leads to the lack of mirror symmetry of macro-bio-objects. To fully understand mechanisms of cross-level order transfer there is an intensive search for simpler artificial structures exhibiting hierarchical arrangement. Here we present complex systems built of achiral molecules that show four levels of structural chirality: layer chirality, helicity of a basic repeating unit, mesoscopic helix and helical filaments. The structures are identified by a combination of hard and soft x-ray diffraction measurements, optical studies and theoretical modelling. Similarly to many biological systems, the studied materials exhibit a coupling between chirality at different levels.
机译:复杂的材料通常表现出一种层级结构,并具有一种有趣的机制,负责从分子到纳米或微米级别的有序“传播”。特别地,诸如核酸和氨基酸的生物分子的手性是DNA和蛋白质的螺旋结构的原因,这进而导致缺乏宏观生物物体的镜像对称性。为了充分理解跨级别订单转移的机制,人们对寻找展示出层次排列的简单人工结构进行了深入的研究。在这里,我们介绍了由非手性分子构成的复杂系统,该系统显示四个级别的结构手性:层手性,基本重复单元的螺旋度,介观螺旋和螺旋丝。通过硬X射线衍射测量和软X射线衍射测量,光学研究和理论建模的组合来识别结构。与许多生物系统相似,所研究的材料在不同水平上显示出手性之间的耦合。

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